Applied Cognitive Neuroscience Lab, Department of Human Physiology, Medical University of Gdansk, Gdansk, Poland.
2-nd Department of Radiology, Medical University of Gdansk, Gdansk, Poland.
Curr Neuropharmacol. 2022 Nov 15;20(12):2292-2302. doi: 10.2174/1570159X20666220222143532.
The arginine vasopressin (AVP), a neurohypophysial hormone, is synthesized within specific sites of the central nervous system and axonally transported to multiple areas, acting as a neurotransmitter/ neuromodulator. In this context, AVP acts primarily through vasopressin receptors A and B and is involved in regulating complex social and cognition behaviors and basic autonomic function. Many earlier studies have shown that AVP as a neuromodulator affects synaptic plasticity. This review updates our current understanding of the underlying molecular mechanisms by which AVP affects synaptic plasticity. Moreover, we discuss AVP modulatory effects on event-related potentials and blood oxygen level-dependent responses in specific brain structures, and AVP effects on the network level oscillatory activity. We aimed at providing an overview of the AVP effects on the brain from the synaptic to the network level.
精氨酸加压素(AVP),一种神经垂体激素,在中枢神经系统的特定部位合成,并通过轴突运输到多个区域,作为神经递质/神经调质发挥作用。在此背景下,AVP 主要通过加压素受体 A 和 B 发挥作用,参与调节复杂的社会和认知行为以及基本的自主功能。许多早期研究表明,AVP 作为一种神经调质会影响突触可塑性。本综述更新了我们目前对 AVP 影响突触可塑性的潜在分子机制的理解。此外,我们还讨论了 AVP 对特定脑结构中事件相关电位和血氧水平依赖反应的调制作用,以及 AVP 对网络水平振荡活动的影响。我们旨在提供一个从突触到网络水平的 AVP 对大脑影响的概述。